首页> 外文期刊>Natural Hazards >Restriction function of lithology and its composite structure to deformation and failure of mining coal seam floor
【24h】

Restriction function of lithology and its composite structure to deformation and failure of mining coal seam floor

机译:岩性及其复合结构对煤层底板变形破坏的制约作用

获取原文
获取原文并翻译 | 示例
           

摘要

In order to research the relationship between deformation and failure depth and lithology and its composite structure, in situ test data on the deformation and structure variation of rocks in different depth of the coal seam floor were utilized on Xinglongzhuang Coal Mine and Baodian Coal Mine in Yanzhou Mining Area by strain testing system and ultrasonic imaging technology in the fully mechanized top-coal working face, and the data on the East Main Haulage of -300 m lever in Peigou Coal Mine in Zhengzhou Mining Area in China were also used. There are obviously different deformation and failure characteristics of similarly homogeneous floor and soft-hard composite structure rocks floor under the mining pressure, which are based on the in situ test data. The research shows that the law of deformation and failure of similarly homogeneous floor is relatively simple; the deformation and failure depth are restricted by the strength of floor rock and has a gradual variation from top to bottom. But the deformation and failure of the interbedded soft-hard rock mining floor are more complex; this kind of structure has a obviously restricting function on the failure depth and deformation degree of the mining floor, and the weak intercalation has a strong constraint effect to the depth of floor failure which implies that the soft rocks have a "cushion effect" on the overlying hard rocks and a "stress diffusion effect" on the underlying hard rocks.
机译:为了研究变形破坏深度与岩性及其复合结构之间的关系,利用in州兴隆庄煤矿和宝甸煤矿不同煤层底板深度岩石变形和结构变化的原位测试数据。在采煤区,通过应变测试系统和超声成像技术在综采工作面进行了开采,并使用了中国郑州矿区佩沟煤矿-300 m杠杆东主牵引的数据。根据现场测试数据,在开采压力下,相似的均质底板和软硬复合结构岩石底板具有明显不同的变形和破坏特性。研究表明,相似均质地板的变形和破坏规律相对简单。变形和破坏深度受底板岩石强度的限制,并且从上到下有逐渐变化的趋势。但是,夹层软硬岩石开采底板的变形和破坏更为复杂。这种结构对矿山底板破坏深度和变形程度具有明显的限制作用,弱插层对底板破坏深度有很强的约束作用,这意味着软岩对矿山底板具有“缓冲作用”。上层硬岩上的应力和对下层硬岩的“应力扩散效应”。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号